Skip to content
1887
Volume 54, Issue 4
  • ISSN: 0032-1400
Preview this article:

There is no abstract available.

Loading

Article metrics loading...

/content/journals/10.1595/147106710X526172
2010-01-01
2024-05-04
Loading full text...

Full text loading...

/deliver/fulltext/pmr/54/4/PMR-54-4-Johnson.html?itemId=/content/journals/10.1595/147106710X526172&mimeType=html&fmt=ahah

References

  1. SAE International:http://www.sae.org/ (Accessed on 27th September 2010)
  2. Johnson T. V. ‘Review of Diesel Emissions and Control’, SAE Paper 2010-01-0301 [Google Scholar]
  3. Zhan R., Li W., Eakle S. T., and Weber P. ‘Development of a Novel Device to Improve Urea Evaporation, Mixing and Distribution to Enhance SCR Performance’, SAE Paper 2010-01-1185 [Google Scholar]
  4. Forzatti P., Nova I., and Tronconi E. ‘Removal of NOx from Diesel Exhausts: The New “Enhanced NH3-SCR” Reaction’, SAE Paper 2010-01-1181 [Google Scholar]
  5. Kamasamudram K., Currier N., Szailer T., and Yezerets A. ‘Why Cu- and Fe-Zeolite SCR Catalysts Behave Differently at Low Temperatures’, SAE Paper 2010-10-1182 [Google Scholar]
  6. Ido T., Yoshimura K., Kunieda M., Tamura Y., and Ohno K. ‘Volume Reduction of SCR Catalyst Using Zeolite-Base Honeycomb Substrate’, SAE Paper 2010-01-1170 [Google Scholar]
  7. Chapman D. M., Fu G., Augustine S., Crouse J., Zavalij L., Watson M., and Perkins-Banks D. ‘New Titania Materials with Improved Stability and Activity for Vanadia-Based Selective Catalytic Reduction of NOx’, SAE Paper 2010-01-1179 [Google Scholar]
  8. Guo G., Warner J., Cavataio G., Dobson D., Badillo E., and Lambert C. ‘The Development of Advanced Urea-SCR Systems for Tier 2 Bin 5 and Beyond Diesel Vehicles’, SAE Paper 2010-01-1183 [Google Scholar]
  9. Laroo C. A. ‘EPA SCR Unregulated Emissions Test Program: Dioxin, Furan, PCB and PAH Emissions from a Compression Ignition Engine Utilizing CuZ SCR’, panel presentation, SAE World Congress & Exhibition, Detroit, MI, USA, 13th April, 2010 [Google Scholar]
  10. Kodama Y., and Wong V. W. ‘Study of On-Board Ammonia (NH3) Generation for SCR Operation’, SAE Paper 2010-01-1071 [Google Scholar]
  11. Xu L., McCabe R., Dearth M., and Ruona W. ‘Laboratory and Vehicle Demonstration of “2nd-Generation” LNT + in-situ SCR Diesel NOx Emission Control Systems’, SAE Paper 2010-01-0305 [Google Scholar]
  12. Theis J. R., Ura J., and McCabe R. ‘The Effects of Sulfur Poisoning and Desulfation Temperature on the NOx Conversion of LNT + SCR Systems for Diesel Applications’, SAE Paper 2010-01-0300 [Google Scholar]
  13. Chen H.-Y., Weigert E., Fedeyko J., Cox J., and Andersen P. ‘Advanced Catalysts for Combined (NAC + SCR) Emission Control Systems’, SAE Paper 2010-01-0302 [Google Scholar]
  14. Murayama T., Aoyagi Y., Kobayashi M., Adachi T., Shimada K., Suzuki H., Goto Y., and Sato Y. ‘Effective Usage of LNT in High Boosted and High EGR Rate of Heavy Duty Diesel Engine’, SAE Paper 2010-01-1066 [Google Scholar]
  15. Warner J. R., Dobson D., and Cavataio G. ‘A Study of Active and Passive Regeneration Using Laboratory Generated Soot on a Variety of SiC Diesel Particulate Filter Formulations’, SAE Paper 2010-01-0533 [Google Scholar]
  16. Harada K., Suzuki K., Okamoto K., Yamada H., and Takami A. ‘Development of High Performance Catalyzed DPF with New Soot Burning Mechanism’, Technical Paper F2008-06-058, FISITA 2008 World Automotive Congress, Munich, Germany, 14th–19th September, 2008 [Google Scholar]
  17. Southward B. W. L., and Basso S. ‘An Investigation into the NO2-Decoupling of Catalyst to Soot Contact and Its Implications for Catalysed DPF Performance’, SAE Paper 2008-01-0481, SAE World Congress & Exhibition, Detroit, MI, USA, 14th–17th April, 2008 [Google Scholar]
  18. Southward B. W. L., Basso S., and Pfeifer M. ‘On the Development of Low PGM Content Direct Soot Combustion Catalysts for Diesel Particulate Filters’, SAE Paper 2010-01-0558 [Google Scholar]
  19. Iretskaya S., Golden S., Tadrous T., and Long S. H. ‘PM Control with Low NO2 Tailpipe Emissions by Systems with Non-PGM Catalyzed DPF for Passive Soot Regeneration’, SAE Paper 2010-01-0563 [Google Scholar]
  20. Karin P., and Hanamura K. ‘Particulate Matter Trapping and Oxidation on a Catalyst Membrane’, SAE Paper 2010-01-0808 [Google Scholar]
  21. Mizutani T., Iwasaki S., Miyairi Y., Yuuki K., Makino M., and Kurachi H. ‘Performance Verification of Next Generation Diesel Particulate Filter’, SAE Paper 2010-01-0531 [Google Scholar]
  22. Austin G., Naber J., Johnson J., and Hutton C. ‘Effects of Biodiesel Blends on Particulate Matter Oxidation in a Catalyzed Particulate Filter during Active Regeneration’, SAE Paper 2010-01-0557 [Google Scholar]
  23. Tsushima S., Nakamura I., Sakashita S., Hirai S., and Kitayama D. ‘Lattice Boltzmann Simulation on Particle Transport and Captured Behaviours in a 3D-Reconstructed Micro Porous DPF’, SAE Paper 2010-01-0534 [Google Scholar]
http://instance.metastore.ingenta.com/content/journals/10.1595/147106710X526172
Loading
/content/journals/10.1595/147106710X526172
Loading

Data & Media loading...

  • Article Type: Research Article
This is a required field
Please enter a valid email address
Approval was a Success
Invalid data
An Error Occurred
Approval was partially successful, following selected items could not be processed due to error